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test facilities. The Section Head leads technical groups, setting technology and operational directions, supporting world-class achievements, ensuring clear project priorities, modeling exemplary safety
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high purity germanium (HPGe) spectrometer systems, which include performing assays in-situ, collecting required parameters, and modeling the unique detector efficiency for each assay. Review and analyze
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modelling of high-intensity, high-power hadron beams and supporting the safe, reliable operation of the Spallation Neutron Source (SNS) accelerator. The AP Group Leader will work closely with the Accelerator
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with a focus on common deliverables, goals, and timelines. Troubleshooting data analysis issues, including implementation issues, hyper-parameter choices, and modeling decisions. Assisting in preparation
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modeling techniques and make fundamental contributions to the field. Interact with other researchers, technicians, and students to shape and drive the research agenda. Present and report research results and
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develop cutting-edge differential privacy techniques for large-scale models across multiple institutions. This position offers a unique opportunity to work with the world's first exascale system
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strategic analysis and modeling research activities of advanced materials, supply chain, and advanced manufacturing technologies for various DOE program offices. The latest analyses focus on DOE’s Advanced
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of scientific AI. Focus Areas: Cross-Domain Interoperability: Develop common readiness templates, standardized metadata models, and APIs to enable seamless integration across diverse scientific domains
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to Computational Methods for Data Reduction. Topics include data compression and reconstruction, data movement, data assimilation, surrogate model design, and machine learning algorithms. The position comes with a
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research analysis on geothermal well development and other advanced energy technologies that could achieve transformative gains in energy efficiency. Ability to develop optimization and life cycle models